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基于高速折反射跟踪的单目立体测量

Monocular Stereo Measurement Using High-Speed Catadioptric Tracking.

作者信息

Hu Shaopeng, Matsumoto Yuji, Takaki Takeshi, Ishi Idaku

机构信息

Department of System Cybernetics, Hiroshima University, 1-4-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8527, Japan.

出版信息

Sensors (Basel). 2017 Aug 9;17(8):1839. doi: 10.3390/s17081839.

Abstract

This paper presents a novel concept of real-time catadioptric stereo tracking using a single ultrafast mirror-drive pan-tilt active vision system that can simultaneously switch between hundreds of different views in a second. By accelerating video-shooting, computation, and actuation at the millisecond-granularity level for time-division multithreaded processing in ultrafast gaze control, the active vision system can function virtually as two or more tracking cameras with different views. It enables a single active vision system to act as virtual left and right pan-tilt cameras that can simultaneously shoot a pair of stereo images for the same object to be observed at arbitrary viewpoints by switching the direction of the mirrors of the active vision system frame by frame. We developed a monocular galvano-mirror-based stereo tracking system that can switch between 500 different views in a second, and it functions as a catadioptric active stereo with left and right pan-tilt tracking cameras that can virtually capture 8-bit color 512 × 512 images each operating at 250 fps to mechanically track a fast-moving object with a sufficient parallax for accurate 3D measurement. Several tracking experiments for moving objects in 3D space are described to demonstrate the performance of our monocular stereo tracking system.

摘要

本文提出了一种实时折反射立体跟踪的新颖概念,该概念采用单个超快速镜驱动云台主动视觉系统,该系统能够在一秒内同时在数百个不同视图之间切换。通过在超快速注视控制中以毫秒粒度级别加速视频拍摄、计算和驱动,用于时分多线程处理,该主动视觉系统实际上可以像两个或更多具有不同视图的跟踪相机一样工作。它使单个主动视觉系统能够充当虚拟的左右云台相机,通过逐帧切换主动视觉系统镜子的方向,能够同时为同一被观察物体拍摄一对立体图像,以便在任意视点进行观察。我们开发了一种基于单目振镜的立体跟踪系统,该系统能够在一秒内切换500个不同视图,并且其功能类似于折反射主动立体系统,具有左右云台跟踪相机,每个相机能够以250帧/秒的速度虚拟捕获8位彩色512×512图像,以机械方式跟踪快速移动的物体,并具有足够的视差用于精确的三维测量。本文描述了在三维空间中对移动物体进行的几次跟踪实验,以展示我们单目立体跟踪系统的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7f0/5579553/cf73a2f18742/sensors-17-01839-g001.jpg

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